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  • 期刊

Effect of Different Concentrations of Collagen, Ceramides, N-acetyl Glucosamine, or Their Mixture on Enhancing the Proliferation of Keratinocytes, Fibroblasts and the Secretion of Collagen and/or the

不同濃度之膠原蛋白、神經醯胺、N-乙醯葡萄胺醣或其混合物對角質細胞、纖維母細胞增生的促進、膠原蛋白的分泌及/或膠原蛋白一型信息核糖核酸表現的影響

摘要


本研究的目的在探討不同濃度之膠原蛋白、神經醯胺、N-乙醯葡萄胺醣或其混合物對角質細胞、纖維母細胞增生的促進、膠原蛋白的分泌及/或膠原蛋白一型信息核糖核酸表現的影響。結果發現:對纖維母細胞增生的最適膠原蛋白、神經醯胺、N-乙醯葡萄胺醣的濃度分別是49、2.0與24.4μg/mL;增生百分比分別是191%、170%與223%(對照組爲100%)。混合物含膠原蛋白、神經醯胺、N-乙醯葡萄胺醣濃度分別爲6.1、0.12與6.1 μg/mL對纖維母細胞的增生最好。對角質細胞增生的最適膠原蛋白、神經醯胺、N-乙醯葡萄胺醣的濃度分別是0.76、0.001與0.76 μg/mL;增生百分比分別是242%、203%與230%(對照組爲100%)。混合物含膠原蛋白、神經醯胺、N-乙醯葡萄胺醣濃度分別爲0.38、0.008與0.38 μg/mL對角質細胞的增生最好。對纖維母細胞膠原蛋白一型信息核糖核酸表現的最適膠原蛋白、神經醯胺、N-乙醯葡萄胺醣的濃度分別是6.1、0.49與6.1 μg/mL;膠原蛋白一型信息核糖核酸表現的百分比分別是152%、160%與220%(對照組爲100%)。混合物(含膠原蛋白、神經醯胺、N-乙醯葡萄胺醣濃度分別爲0.76、0.015與0.76 μg/mL)對膠原蛋一型信息核糖核酸表現的百分比分爲180%。

並列摘要


The objectives of the study are to survey the effects of different concentrations of collagen, ceramides, N-acetyl glucosamine (NAG), or their mixture on the proliferation of keratinocytes, fibroblasts and on the secretion of collagen and/or the expression of mRNA of type I collagen. The optimal concentrations that facilitated the proliferation of fibroblasts were 49, 2.0, and 24.4 μg/mL, respectively for collagen, ceramides, and NAG. The proliferation percentages were 191%, 170%, and 223%, respectively at the same order in compare to the control. The concentration of the mixture containing 6.1, 0.12 and 6.1 μg/mL, respectively of collagen, ceramides, and NAG facilitated the proliferation of fibroblasts. The optimal concentrations that had highest keratinocytes proliferation were 0.76, 0.001, and 0.76 μg/mL, respectively for collagen, ceramides, and NAG. The proliferation percentages were 242%, 203% and 230%, respectively at the same order in compare to the control. The optimal concentration that effects the highest keratinocytes proliferation by the mixture were 0.38, 0.008 and 0.38 μg/mL for collagen, ceramides and NAG, respectively. The concentrations for fibroblasts to express higher amount of type I collagen mRNA were 6.1, 0.49, and 6.1 μg/mL, respectively for collagen, ceramides, and NAG. The expression levels of type I collagen mRNA were 152%, 160% and 220%, respectively at the same order in compare to the control. However, the expressions of type I collagen mRNA were 180% in compare to the control at the concentration of mixture containing 0.76, 0.015 and 0.76 μg/mL, respectively of collagen, ceramides, and NAG.

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